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Statistical inference / Multiplexing / Optical add-drop multiplexer / Routing and wavelength assignment / Fiber-optic communications / Kriging / Network monitoring / Optical performance monitoring / Estimator / Statistics / Network management / Estimation theory


IEEE/OSA JOURNAL OF OPTICAL COMMUNICATIONS AND NETWORKING 1 Cross-layer Monitoring in Transparent Optical Networks
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Document Date: 2011-03-23 15:05:26


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File Size: 278,05 KB

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City

Istanbul / Anaheim / Tomography / Vienna / Palo Alto / Athens / San Diego / Bell Labs / /

Company

IEEE Intl / Texas Instruments / Applied Signal Technology Inc. / ACM Transactions / Neural Information Processing Systems / AlcatelLucent Bell Labs / Fiber-Optic Communications Systems / Transparent Optical Networks / CROSS-LAYER MONITORING IN TRANSPARENT OPTICAL NETWORKS / John Wiley & Sons Inc. / Transparent Mesh Optical Networks / Lucent / /

Country

France / Canada / Australia / United Kingdom / Germany / Turkey / Austria / United States / Greece / /

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Facility

Stanford University / University of Illinois / University of Wisconsin / University of Virginia / University of Adelaide / University of Cambridge / Rice University / McGill University / /

IndustryTerm

all-optical networks / transmission device / transparent networks / monitor placement algorithm / optical network / proposed placement algorithm / proposed monitor placement algorithm / network infrastructure / energy / polynomial-time algorithms / costly hardware monitoring equipment / sensor networks / average energy / distributed information processing / occurred using failure localization algorithms / gmpls signaling protocol / detection algorithm / alloptical networks / optical networks / physical devices / placement algorithm / hardware device / location algorithm / few potential applications / natural solution / solved software packages / fewer monitoring devices / Internet Meas / hardware monitor placement algorithm / network operator / active lightpaths selection algorithm / coherent devices / distributed transparent dynamic optical networks / statistical signal processing / /

Organization

University of Adelaide / McGill University / University of Virginia / Ecole Centrale de Lille / McGill University / Montreal / McGill University in Montreal / Rice University / Houston / National Science Foundation / Department of Electrical and Computer Engineering / University of Illinois / University of Cambridge / Stanford University / Natural Sciences and Engineering Research Council / University of Wisconsin / /

Person

Mark Coates / R. Bach / Mark J. Coates / Yvan Pointurier / Michael Rabbat / /

Position

technical leader / rT / network manager / research associate and lecturer / visiting researcher / Associate Professor / Editor / general network performance / corresponding author / Assistant Professor / research engineer / D. J. / /

ProgrammingLanguage

Erlang / E / /

ProvinceOrState

Quebec / Virginia / Georgia / Texas / Wisconsin / Illinois / /

PublishedMedium

Complex Systems / /

SportsLeague

Stanford University / /

Technology

Failure location algorithm / following algorithm / Information Technology / active lightpaths selection algorithm / Enhancing gmpls signaling protocol / Quality of Service / proposed placement algorithm / placement algorithm / Optical Fiber / monitor placement algorithm / RWA algorithms / same algorithm / Service Level Agreement / RWA algorithm / Phase Modulation / detection algorithm / hardware monitor placement algorithm / Tomography / polynomial-time algorithms / proposed algorithm / 0.2 0 1 0.9 Greedy placement algorithm / occurred using failure localization algorithms / simulation / Wavelength Assignment algorithm / proposed monitor placement algorithm / /

URL

http /

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